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Primary Step Towards In Situ Detection of Chemical Biomarkers in the UNIVERSE via Liquid-Based Analytical System: Development of an Automated Online Trapping/Liquid Chromatography System

机译:通过基于液体的分析系统向大学中的化学生物标志物原位检测迈出的第一步:开发自动在线捕集/液相色谱系统

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The search for biomarkers in our solar system is a fundamental challenge for the space research community. It encompasses major difficulties linked to their very low concentration levels, their ambiguous origins (biotic or abiotic), as well as their diversity and complexity. Even if, in 40 years’ time, great improvements in sample pre-treatment, chromatographic separation and mass spectrometry detection have been achieved, there is still a need for new in situ scientific instrumentation. This work presents an original liquid chromatographic system with a trapping unit dedicated to the one-pot detection of a large set of non-volatile extra-terrestrial compounds. It is composed of two units, monitored by a single pump. The first unit is an online trapping unit able to trap polar, apolar, monomeric and polymeric organics. The second unit is an online analytical unit with a high-resolution Q-Orbitrap mass spectrometer. The designed single pump system was as efficient as a laboratory dual-trap LC system for the analysis of amino acids, nucleobases and oligopeptides. The overall setup significantly improves sensitivity, providing limits of detection ranging from ppb to ppt levels, thus meeting with in situ enquiries.
机译:在我们的太阳系中寻找生物标记物是空间研究界的一项基本挑战。它包括与浓度很低,来源不明确(生物或非生物)以及多样性和复杂性有关的主要困难。即使在40年的时间里,样品预处理,色谱分离和质谱检测取得了很大的进步,仍然需要新的现场科学仪器。这项工作提出了一个原始的液相色谱系统,该系统具有一个捕集单元,专用于一锅法检测大量的非挥发性地球外化合物。它由两个单元组成,由一个泵监控。第一单元是在线捕集单元,能够捕集极性,非极性,单体和聚合有机物。第二个单元是带有高分辨率Q-Orbitrap质谱仪的在线分析单元。设计的单泵系统与实验室双阱液相色谱系统一样高效,可用于分析氨基酸,核碱基和寡肽。整体设置大大提高了灵敏度,提供了从ppb到ppt级别的检测极限,从而满足了现场查询的需求。

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